论文标题
光合能传递启发的耦合谐振器中的光学非循环性
Optical Non-Reciprocity in Coupled Resonators Inspired by Photosynthetic Energy Transfer
论文作者
论文摘要
受光合能传递过程的启发,我们从理论上提出了一种在一系列耦合的谐振器中实现非重新传播光学传输的方法。耦合谐振器的光学非循环性来自相邻腔之间的频率梯度和与环境的相互作用,这与光合能传递相似。频率梯度的增加或腔体数量可能导致更好的非股骨能力。但是,尽管较高的环境温度会增加耦合腔中的总光子数量,但非年份会削弱。所有这些发现都可以通过详细的平衡来很好地描述。我们的发现揭示了自然光合作用中噪声诱导的光学非循环和激子能量转移之间的相似性。
Inspired by the photosynthetic energy transfer process, we theoretically propose a method to realize non-reciprocal optical transmission in an array of coupled resonators. The optical non-reciprocity of the coupled resonators arises from the frequency gradient between adjacent cavities and the interaction with the environment, which is similar to photosynthetic energy transfer. An increase in the frequency gradient or the number of the cavities can lead to better non-reciprocity. However, although a higher environment temperature will increase the total photon number in the coupled cavities, non-reciprocity will be weakened. All these findings can be well described by the detailed balance. Our discovery reveals the similarity between the noise-induced optical non-reciprocity and exciton energy transfer in natural photosynthesis.